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Synthesis, characterization, and quantitation of a 4-aminobiphenyl-DNA adduct standard.

机译:4-氨基联苯-DNA加合物标准品的合成,表征和定量。

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32P-Postlabeling is a powerful technique for the detection of DNA adducts; however, quantitation of DNA adducts by this method can result in errors due to differences in hydrolysis and labeling efficiencies between adducted and normal nucleotides. We have synthesized a DNA sample modified with 4-aminobiphenyl to serve as a quantitation standard for 32P-postlabeling and other DNA adduct detection methodologies. [2,2'-3H]-N-Hydroxy-4-aminobiphenyl was reacted with calf thymus DNA at pH 5 to give 62 +/- 0.8 adducts/10(8) nucleotides (mean +/- SD) on the basis of 3H content. HPLC analyses following enzymatic hydrolysis to nucleosides indicated one major adduct, N-(deoxyguanosin-8-yl)-4-aminobiphenyl (dG-C8-4-ABP). The adduct identity was confirmed by HPLC/electrospray ionization mass spectrometry, which indicated a modification level of 19 +/- 1.7 dG-C8-4-ABP/10(8) nucleotides. 32P-Postlabeling analysis gave a value of 0.84 dG-C8-4-ABP/10(8) nucleotides, while a dissociation-enhanced lanthanide fluoroimmunoassay (DELFIA) indicated levels of 82 +/- 26 and 63 +/- 20 dG-C8-4-ABP/10(8) nucleotides after enzymatic hydrolysis to nucleotides and nucleosides, respectively. The utility of the DNA adduct standard was determined by assessing the level of dG-C8-4-ABP in liver DNA from mice treated with [2,2'-3H]-4-aminobiphenyl. 32P-Postlabeling analyses, based upon measuring the extent of the 32P incorporation, underestimated the levels of dG-C8-4-ABP, while DELFIA, using a G-C8-4-ABP quantitation standard, overestimated the adduct levels. The adduct levels determined by HPLC/electrospray ionization mass spectrometry best reflected those obtained from 3H incorporation. When the 32P-postlabeling analyses and the DELFIA were conducted using the DNA modified in vitro with dG-C8-4-ABP as a quantitation standard, accurate estimations of the extent of in vivo formation of dG-C8-4-ABP were obtained.
机译:32P后标记是检测DNA加合物的强大技术。然而,由于加合物和正常核苷酸之间的水解和标记效率差异,通过这种方法对DNA加合物进行定量可能会导致错误。我们已经合成了一种用4-氨基联苯修饰的DNA样品,以作为32P后标记和其他DNA加合物检测方法的定量标准。 [2,2'-3H] -N-羟基-4-氨基联苯在pH 5下与小牛胸腺DNA反应,得到62 +/- 0.8加合物/ 10(8)核苷酸(平均值+/- SD) 3H含量。酶促水解为核苷后的HPLC分析表明,一种主要的加合物N-(脱氧鸟苷-8-基)-4-氨基联苯(dG-C8-4-ABP)。通过HPLC /电喷雾电离质谱法确认了加合物的身份,其表明修饰水平为19 +/- 1.7 dG-C8-4-ABP / 10(8)核苷酸。 32P后标记分析得出的值为0.84 dG-C8-4-ABP / 10(8)核苷酸,而离解增强的镧系元素荧光免疫分析(DELFIA)表明水平为82 +/- 26和63 +/- 20 dG-C8分别酶水解为核苷酸和核苷后的-4-ABP / 10(8)核苷酸。通过评估用[2,2'-3H] -4-氨基联苯处理的小鼠肝脏DNA中dG-C8-4-ABP的水平,可以确定DNA加合物标准品的用途。基于测量32P掺入程度的32P后标记分析低估了dG-C8-4-ABP的水平,而DELFIA使用G-C8-4-ABP定量标准,则高估了加合物的水平。通过HPLC /电喷雾电离质谱法测定的加合物水平最好地反映了从3H掺入获得的那些。当使用以dG-C8-4-ABP作为定量标准的体外修饰的DNA进行32P后标记分析和DELFIA时,可获得dG-C8-4-ABP体内形成程度的准确估计。

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